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Hong Hu
Professor
,
School of Fashion and Textiles
https://orcid.org/0000-0002-5098-2415
Phone
34003089
Email
hu.hong
polyu.edu
hk
h-index
10293
Citations
53
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
1995 …
2024
Research activity per year
Overview
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Network
Research output
(271)
Prizes
(12)
Activities
(28)
Similar Profiles
(6)
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Dive into the research topics where Hong Hu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Negative Poisson's Ratio
75%
Auxetic
70%
Yarn
57%
Auxetic Fabric
49%
Warp-knitted Spacer Fabric
44%
Three-dimensional (3D)
37%
Spacer Fabric
37%
Fabric Type
35%
Biaxial
31%
Mechanical Properties
29%
Auxetic Structure
28%
Deformation Behavior
28%
Knitted Fabric
27%
Energy Absorption
27%
Textile
27%
Poisson's Ratio
25%
Weft-knitted Fabric
24%
Auxetic Behavior
24%
Warp-knitted Fabric
24%
Composite Reinforcement
22%
Weft-knitted
22%
Finite Element Analysis
21%
Woven Fabric
20%
Re-entrant
20%
Wound Dressing
19%
Mechanical Behavior
19%
Auxetic Composites
18%
Fabric Structure
17%
Tensile Properties
17%
Auxetic Effect
17%
Weft
17%
Technical Application
17%
Compression Behavior
16%
Textile Structure
16%
Weft Knitting
16%
Graphene
16%
Yarn Structure
15%
Finite Element Method
15%
Tensile Strain
15%
Stiffness
15%
Composite Materials
15%
Warp-knitted
14%
Finite Element Model
14%
Exuding Wounds
14%
Quasi-static
13%
Geometrical Analysis
13%
Strain Rate
13%
Multi-axial
13%
Reinforced Composites
12%
Knitted Composites
12%
Engineering
Poisson Ratio
100%
Knitted Fabric
89%
Knitted Spacer Fabric
59%
Finite Element Method
48%
Spacer Fabric
44%
Auxetic Structure
37%
Tensiles
33%
Energy Absorption
30%
Experimental Result
30%
Deformation Behavior
28%
Finite Element Modeling
27%
Knitted Structure
25%
Fabric Structure
25%
Structural Parameter
21%
Good Agreement
19%
Ratio Effect
19%
Strain Rate
18%
High Strain Rate
16%
Textile Structure
15%
Tensile Strain
14%
Flat Knitting Machine
13%
Impact Energy
13%
Monofilament
13%
Deformation Mechanism
13%
Composite Textile
12%
Geometrical Parameter
12%
Elastic Yarn
11%
Energy Engineering
11%
Tensile Test
11%
Potential Application
10%
Impact Test
10%
Young's Modulus
10%
Failure Mode
10%
Polyurethan
10%
Finite Element Simulation
10%
Composite Structure
10%
Tensile Property
10%
Mechanical Performance
10%
Composite Material
10%
Impact Loads
9%
Transmissions
9%
Honeycomb Structure
9%
Plied Yarn
9%
Impact Response
9%
Knitted Fabric Composite
8%
Dynamic Response
8%
Microstructure
8%
Knitting Machine
8%
Vibration Isolation
8%
Compressive Behavior
8%